Fundamentals of Industrial Instrumentation and Process Control

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Write a Testimonial Few good words, go a long way, thanks! Personalize Gift card We will send an email to receiver for gift card. Continue Shopping Checkout. Reset Pincode. Submit a Review. JK Rowling. Home Fundamentals Of Industrial Instrumentati Click on below image to change. Click on image to Zoom. Average Rating Customers. Description Designed as a text for use in community colleges or vocational schools, this up to date text is unsurpassed in its treatment of such subjects as: instruments and parameters, electrical components both analog and digital various types of actuators and regulators, plumbing and instrumentation diagrams and Operation of process controllers.

Most recently he taught industrial instrumentation, and digital logic at Ouachita Technical College as an adjunct professor. Submit Review Submit Review. Check Delivery Status. Dispatched in working days. Availability In Stock. Guaranteed service. International Shipping available. Other Books By Author. Becoming a Compellin William C.

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Monday to Saturday 9. E-Gift Coupon , click here. Labs will include transformers, capacitors and inductors. Transistor theory and labs will include RC coupled amplifiers, common emitter, common collector and common base problems.

Fundamentals of Industrial Instrumentation and Process Control : William Dunn :

Topics will include oscilloscope operation and applications. Troubleshooting will include OpAmp circuits and power supply circuits. This course covers the principles of pressure measurement including: units and conversions, pressure elements, pressure switches and pressure gauges.

Pneumatic instruments will also be examined such as: basic pneumatic instrument components, force balance instruments, motion balance instruments, pressure transmitters and pressure recorders.


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  • Fundamentals of Industrial Instrumentation and Process Control!

Students will also learn the following electronic instruments: electronic transmitters, smart transmitters digital, pneumatic to current transducers, and current to pneumatic transducers. Prerequisite: Successful completion of term 1 courses. In this course, students will investigate flow measurement: displacement flow meters, flow switches, rotameters, turbines, pitot tubes, orifice plates and flow nozzles, connecting piping, pipe and tube fittings, sensing line fabrication, flumes and weirs, inferential flow calculations, magnetic flow meters and others.

Flow instruments reviewed are pneumatic transmitters, electronic transmitters, smart flow transmitters digital. Density measurement will be examined in this course including: buoyancy, nuclear, refractometers, head type and boiling point rise. Further topics include level measurement, level switches float, conductivity, etc , gauge glasses, head level measurement, bubble pipes, displacement level detectors, nuclear level, capacitance level and ultrasonic. Control valves and positioners will be examined in this course, including: valve bodies, diaphragm actuators, piston actuators, sliding stem valves, rotary acting valves and valve sizing.

Students will learn basic hydraulic theory, the symbols associated with hydraulic documentation and hydraulic applications for instrumentation. Topics will include hydraulic pumps, motors, servos, valves, solenoids, filters and accumulators. Students will build various circuits from hydraulic schematics. This course examines temperature units and conversion. Topics covered also include principles of temperature measurement such as: thermometers and bi-metallic, filled thermal systems, temperature switches, RTD's includes thermistors , thermocouples and non-contract temperature measurements.

Students will be introduced to the various temperature instruments such as: pneumatic transmitters, electronic transmitters, smart transmitters digital , temperature recorders and current to current transducers. Prerequisite: Successful completion of term 2 courses. This course will prepare students to be able to design and interpret conventional relay logic. They will also learn how to configure, program and troubleshoot Programmable Logic Controllers PLCs for motor control.

Prrequisite: Successful completion of term 2 courses. Students will learn the fundamentals of signal conditioning and scaling, the fundamentals of control modes and controller modes and the alignment and maintenance of pneumatic controllers. As part of course work, students will program microprocessor controllers and wire them for a given application.

This course looks at a variety of process control and control systems. The following control strategies are also covered: duplex control, auto selector, gap action, relation, cascade, ratio and feed forward. Loop tuning techniques and hands-on experience with live processes are included.

Fundamentals of Industrial Instrumentation and Process Control

Students will be trained in the fundamentals and calibration of transmitters used for analytical measurement such as pH, conductivity, ORP and dissolved oxygen. Students will gain experience tuning DCS control systems using advanced control strategies to operate a chemical process to control variables such as pH and electrolytic conductivity. Prerequisite: Successful completion of term 3 courses. In this course students will learn the theory and application of different types of flip flop circuits.

This course investigates the different types of DCS and microprocessor controllers such as generic computer control systems. Students will learn the fundamentals of industrial boiler control, including burner management safety. Students will gain experience tuning up a real industrial boiler control system with state of the art controls to achieve optimum performance from the boiler. Students will gain hands-on experience with a Foundation Fieldbus control system applied to a wide variety of control loops on a running boiler.

The accurate measurement of viscosity and consistency is integral to the efficient operation of many industrial processes. In this course, students will learn about different types of viscosity and consistency measurements.

Students will calibrate consistency transmitters in the pulp blending lab. Do you want to know if they transfer to courses here at BCIT? To advance to the next level, students must successfully pass all courses in the previous level. This information is used for the purposes of tracking successful completions in order to grant credit towards apprenticeship where applicable, and communicating with trainees to promote continuation in an apprenticeship program.

Graduates will receive credits of technical training upon successful completion of the program. Graduates of the Industrial Instrumentation and Process Control Technician program will be well positioned to gain employment as technicians in the instrumentation and control field across diverse industries such as oil and gas, pulp and paper, mining, food processing, and ship building, among others.

The BCIT student outcomes reports present summary findings from the annual survey of former students administered by BC Stats one to two years after graduation. These reports combine the last three years of available results for the BCIT Outcomes Surveys of graduates and for Degree graduates. The reports are organized into three-page summaries containing information on graduates' labour market experiences and opinions regarding their education. More detailed information can be accessed at the BC Student Outcomes website. To view these results, you may need to have the Adobe Acrobat Reader installed in your Web browser.

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